Infineon Technologies_CY88155PFT-G-110-JN-ERE1
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Infineon Technologies
CY88155PFT-G-110-JN-ERE1

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IC FANOUT BUFFER 8TSSOP

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ISO9001
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Tech Specifications

Operating Temperature
-40°C ~ 85°C
ECCN
EAR99
Ratio - Input:Output
1:2
Differential - Input:Output
No/No
Mounting Type
Surface Mount
Product Status
Obsolete
Supplier Device Package
8-TSSOP
PLL
Yes with Bypass
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CY88155PFT-G-110-JN-ERE1 Description

CY88155PFT-G-110-JN-ERE1 Description

The CY88155PFT-G-110-JN-ERE1 is a fanout buffer and spread spectrum clock generator designed by Infineon Technologies. This integrated circuit (IC) is housed in an 8-pin TSSOP package and is ideal for applications requiring a reliable and efficient clock distribution solution. The device operates with a supply voltage range of 3V to 3.6V and supports a maximum frequency of 25MHz. It features a 1:2 input-to-output ratio, making it suitable for applications where signal distribution and clock generation are critical.

CY88155PFT-G-110-JN-ERE1 Features

  • Fanout Buffer and Spread Spectrum Clock Generator: The CY88155PFT-G-110-JN-ERE1 is designed to provide a fanout buffer function along with spread spectrum clock generation capabilities. This dual functionality makes it a versatile component for various clock distribution needs.
  • Supply Voltage Range: The device operates within a supply voltage range of 3V to 3.6V, ensuring compatibility with a wide range of power supply configurations.
  • Maximum Frequency: With a maximum operating frequency of 25MHz, this IC is suitable for high-speed clock distribution applications.
  • Input and Output Types: The input is designed for crystal oscillators, ensuring precise and stable clock signals. The output is CMOS-compatible, making it easy to integrate with other digital circuits.
  • PLL with Bypass: The device features a Phase-Locked Loop (PLL) with bypass functionality, allowing for flexible clock generation and synchronization.
  • Surface Mount Technology: The CY88155PFT-G-110-JN-ERE1 is designed for surface mount applications, making it suitable for compact and high-density PCB designs.
  • Obsolete Status: Although the product is marked as obsolete, it remains a reliable choice for legacy systems and applications where its specific features are required.
  • Compliance and Packaging: The device is REACH unaffected and RoHS3 compliant, ensuring it meets environmental and safety standards. It is packaged in tape and reel (TR) format, facilitating automated assembly processes.

CY88155PFT-G-110-JN-ERE1 Applications

The CY88155PFT-G-110-JN-ERE1 is ideal for a variety of applications where reliable clock distribution and generation are essential. Some specific use cases include:

  • Telecommunications: In telecom systems, the IC can be used to distribute clock signals across various components, ensuring synchronized operation.
  • Computer Systems: For computer motherboards and peripheral devices, the fanout buffer function helps distribute clock signals to multiple components, maintaining system stability.
  • Industrial Control Systems: In industrial applications, the device can provide stable clock signals for microcontrollers and other digital circuits, ensuring accurate timing and control.
  • Consumer Electronics: In devices such as routers, modems, and set-top boxes, the CY88155PFT-G-110-JN-ERE1 can be used to generate and distribute clock signals, enhancing performance and reliability.

Conclusion of CY88155PFT-G-110-JN-ERE1

The CY88155PFT-G-110-JN-ERE1 by Infineon Technologies is a robust and versatile fanout buffer and spread spectrum clock generator. Its combination of a 1:2 input-to-output ratio, CMOS-compatible outputs, and a maximum frequency of 25MHz makes it suitable for a wide range of high-speed clock distribution applications. Despite its obsolete status, the device remains a reliable choice for legacy systems and applications where its specific features are required. The IC's compliance with environmental and safety standards, along with its surface mount packaging, ensures it meets the demands of modern electronics manufacturing.

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